Me and the Bad Universe
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call me Kohei if needed, https://t.me/memeagainbleh "If you need a hero, just look in the mirror" I talk a LOT, so i hope you guys are here to listen, Bd at 12/3, intp-a, i love everything, Site: @Axxisar266BOT (NOT anonymous,)
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#Facts_thesecondtry
Hiii, it's day fifteen of trying to get bored of Telegram by posting a fact every day, and today's fact is: How can someone feel pain in a body part that no longer exists?
Imagine scratching an itch on a hand that was amputated years ago. Imagine feeling your toes cramp, your fingers curl, or your foot burn with unbearable pain, even though that entire limb no longer exists. As impossible as it sounds, this is a real neurological condition called Phantom Limb Syndrome, and it affects a large percentage of people who lose a limb.
The name "phantom limb" doesn't mean the pain is imaginary. The pain is completely real. People often describe it as burning, stabbing, crushing, electric shocks, or intense muscle cramps. Others feel the missing limb changing position, moving on its own, or becoming frozen in an uncomfortable posture. Some even report feeling individual fingers or toes despite them being gone for decades.
The reason lies inside the brain rather than the missing limb itself.
Your brain constantly maintains an internal map of your entire body. Every movement you make, every touch you feel, and every sensation you experience is represented within different regions of the brain. When a limb is amputated, that physical part of the body disappears, but its representation inside the brain does not vanish overnight. Those neurons remain active, expecting signals that never arrive.
The nervous system becomes confused. Damaged nerve endings near the amputation site may continue firing electrical impulses, while the brain tries to interpret incomplete or abnormal information. Instead of realizing the limb is gone, it often concludes that the limb is injured, creating sensations that feel completely real. In other words, the brain is experiencing pain from a memory of the body rather than the body itself.
Scientists have also discovered that the brain begins reorganizing itself after an amputation. Areas that once processed information from the missing limb can gradually be taken over by neighboring regions. This process, known as brain plasticity, is one reason why touching a person's face can sometimes make them feel sensations in a missing hand, because those regions of the brain are located surprisingly close to one another.
One of the most fascinating treatments ever developed is mirror therapy. A simple mirror is placed between the patient's limbs so the reflection of the healthy limb appears where the missing one would normally be. As the patient watches the reflection while moving the healthy limb, the brain receives visual information suggesting that both limbs are moving normally. For many patients, this visual illusion helps the brain rewrite its internal body map, reducing phantom pain and, in some cases, eliminating it for weeks, months, or even longer.
Today, researchers are exploring even more advanced treatments using virtual reality, robotic prosthetic limbs that send sensory feedback, and brain-computer interfaces designed to restore the missing communication between the brain and the body.
Perhaps the most fascinating part of Phantom Limb Syndrome is what it reveals about the human brain. It shows that what we experience isn't simply created by our bodies, but by how our brains interpret them. A missing limb can disappear from reality while continuing to exist inside the mind, reminding us that sometimes the brain's version of reality can be stronger than reality itself. And that is all for today hope you enjoyed it, and dont forget to react
#Facts_TheSecondTry
Hiii, it's day fourteen of trying to get bored of Telegram by posting a fact every day, and today's fact is about what happens inside the human brain in the final moments before death.
Death has always been one of humanity's greatest mysteries. Every culture has its own beliefs about what happens in the final moments of life, but for science, the question has always been much simpler: what does the brain actually do when a person dies?
For decades, scientists believed that once the heart stopped beating, the brain would almost immediately shut down because it could no longer receive oxygen and nutrients through the blood. Since brain cells depend on a constant supply of oxygen, it was assumed that consciousness disappeared almost instantly.
But in 2022, researchers reported something that challenged this long-standing assumption.
A patient was being monitored with an electroencephalogram (EEG), a device that records the brain's electrical activity. During the recording, the patient unexpectedly went into cardiac arrest and passed away. Because the EEG was already running, doctors captured one of the first detailed recordings of a human brain during the moments immediately before and after death.
Instead of seeing the brain fall silent the moment the heart stopped, they observed a brief burst of organized brain activity. Among the signals they detected were gamma waves, a type of brain wave that has previously been linked to memory recall, attention, dreaming, problem solving, and conscious awareness.
This immediately caught scientists' attention.
Gamma waves are usually seen when different parts of the brain communicate with each other during complex mental processes. Seeing them appear around the time of death raised an intriguing possibility: perhaps the brain doesn't simply switch off. Instead, it may continue working for a short time, carrying out one final sequence of activity before everything comes to an end.
Some researchers suggested that this could help explain one of the most common reports from people who survive near-death experiences. Many describe seeing vivid memories, important moments from their lives, or feeling as if years of memories passed before them in only a few seconds. While these experiences remain controversial and cannot yet be fully explained, the brain activity observed in this study offers one possible biological explanation.
However, there is an important limitation. The entire conclusion comes from a single patient, meaning scientists cannot say that every human brain behaves the same way. The patient also had previous neurological conditions, which may have affected the recordings. Because of this, researchers are careful not to claim that the study proves consciousness continues after death or that everyone relives their memories in their final moments.
What the study does show is that death may not be the instant shutdown we once imagined. For a brief period after the heart stops, the brain may still produce organized electrical activity, though exactly what that activity means remains unknown.
Even today, despite all our advances in neuroscience, nobody knows what a person truly experiences during the last seconds of life. The human brain has revealed countless secrets over the years, yet the mystery of its final moments remains one of the few questions that science still cannot fully answer. And that is ALL for today, thanks for reading hope you enjoyed everything, and react with different reactions or im gonna hunt your soul
#Facts_TheSecondTry
Hii, it's day thirteen of trying to get bored of Telegram by posting a fact every day, and today's fact is; Why do people lose their sense of wonder as they grow older?
In your childhood, you didn't see the world the way you do now. It was much bigger, much stranger, and much more alive.
Raindrops on the window were an event. The sound of thunder felt like a message from the heavens. The smell of the earth after the rain was something worth stopping for. The sea wasn't just beautiful, it was vast enough to remind you how small you were. A single star could open an endless door of questions inside your mind
Then you grew up,
Wonder didn't disappear all at once. It slowly slipped away, quietly, almost as if it knew it was no longer welcome.
At first, you told yourself, When I buy that new phone, I'll be happy. Then it became, When I travel to my dream destination, I'll finally feel different. Then, When I become successful, I'll find peace. Then, When I fall in love, I'll finally be complete. And it goes on and on
The strange thing is that many of those things eventually happened, but the happiness you expected didn't always come with them.
The things you believed would save you passed by with surprising speed, like numbers flashing across a screen before disappearing.
Slowly, you realized the problem wasn't the lack of things. It was something deeper. You had started seeing everything before truly living it.
This is the age we live in. An age that rarely gives you the chance to be amazed. It urges you to explain before experiencing, to judge before reflecting, and to consume before savoring. Everything moves so fast that the human soul no longer has enough time to catch up.
The eyes still see, but the heart no longer arrives. The mind understands, but nothing inside truly trembles.
Children don't experience the world that way
A child touches, observes, pauses, then looks again. They laugh, admire, and wonder. A child doesn't see the world as something to use, but as something to explore.
As adults, we often approach the world only for what we can gain from it. We rush. We search for convenience. We expect everything to serve a purpose.
Even beauty is expected to be useful
But wonder has never come from usefulness. Wonder is born from standing still before something that cannot be reduced or explained
That's why the sky is an entire universe in the hands of a child, yet only a passing background to an adult. That's why a rose can feel like an event, a shadow like a mystery, and birdsong in the morning can fill an entire heart
Children still possess what many adults have lost: the ability to be moved before they explain
We, on the other hand, often act as though we already know the world, when in reality, we've simply stopped seeing it.
There's another reason which is comparison. When you constantly watch other people's lives while remaining in the same place, you slowly lose the ability to appreciate your own. Everything starts to feel incomplete, outdated, or not enough.
Even if you're standing somewhere beautiful, your mind tells you there's somewhere even better because you've already seen it on a screen, The present stops being the present. It becomes nothing more than a waiting room between two images.
And a person who lives among images instead of moments slowly loses their ability to be surprised, thats all for today thanks for reading
Instead of short and long signals, he stretched them into vertical bars of different widths.
That simple idea eventually became the barcode.
Today, when a barcode scanner shines a laser onto those black and white lines, the white spaces reflect more light while the black bars absorb it. The scanner converts those reflections into digital data, which the computer interprets as numbers linked to a product's information, such as its name, manufacturer, and price.
So the next time you buy something from a supermarket and hear that familiar beep...
Remember that the technology behind those simple black and white lines can trace part of its history back to a grieving husband who wished one message had arrived just a little sooner. And that is all i know, theres alof of words to add but im too lazy, byebye and thanks for reading
#Facts_thesecondtry
Hiii, it's day twelve of trying to get bored of Telegram by posting a fact every day, and today's fact is about an invention that completely changed the way humans communicate which is Morse Code.
The story begins in 1825 with an American painter named Samuel Morse. At the time, he was invited to Washington to paint a portrait of the famous French hero, Marquis de Lafayette, one of the most important figures of the American Revolution
Before leaving, Morse said goodbye to his pregnant wife and his two young children, expecting the trip to last only a short time. Once he arrived in Washington, he wrote a letter to his family describing his first meeting with Lafayette. He ended the letter with a simple sentence:
"With love, your Morse. Kiss the children for me, and wait for my next letter."
What he didn't know was that, hundreds of kilometers away, his wife had suddenly become seriously ill
In the 1820s, there were no telephones, no internet, and certainly no instant messaging. News traveled only as fast as a horse, a carriage, or a ship could carry it. Days passed before a messenger finally reached Morse with devastating news: his wife was dying.
He immediately abandoned everything and rushed home as quickly as he could, traveling day and night without stopping. But he was too late
By the time he arrived, not only had his wife passed away, she had already been buried
That heartbreaking moment stayed with him for the rest of his life
He couldn't stop asking himself one question; Why should distance prevent people from receiving the messages that matter most?
From that moment on, Morse gradually shifted his attention from painting to science. He began studying electricity, magnets, and the possibility of sending information over long distances using electrical signals. After years of experiments and countless failures, he and his colleague Alfred Vail successfully developed the electric telegraph.
But what exactly was a telegraph?
Imagine two devices connected by a very long copper wire, powered by a battery
On one side, an operator presses a small metal key. Pressing the key closes an electrical circuit, allowing electricity to travel through the wire almost instantly. At the other end, the current activates an electromagnet that produces a clicking sound or moves a small lever
The electricity itself wasn't carrying words—it was only carrying pulses.
So another problem appeared; How can a series of electrical pulses become actual letters and sentences?
The solution became one of the most famous communication systems in history: Morse Code.
Instead of creating hundreds of different signals, Morse used only two:
• A short signal called a dot.
— A longer signal called a dash.
Every letter of the alphabet became a unique combination of dots and dashes, For example:
A = • —
B = — • • •
Kohei = — • — — — — • • • • • • •
This meant that even complex messages could be transmitted using nothing more than short and long electrical pulses. Skilled telegraph operators could send and receive entire conversations simply by listening to the rhythm of the clicks.
For decades, Morse Code became one of the fastest ways to communicate across cities, countries, and even continents. It was widely used by railways, newspapers, ships, governments, and the military long before telephones became common.
But surprisingly, the story doesn't end there.
More than a century later, in the late 1940s, an engineer named Bernard Silver and his colleague Norman Joseph Woodland were trying to solve a completely different problem.
At the time, every cashier had to manually enter product numbers, making shopping slow and inefficient.
While searching for a solution, Woodland remembered the Morse Code he had learned as a Boy Scout.
Then an idea crossed his mind: What if dots and dashes weren't sounds anymore? What if they became black and white lines?
#Facts_thesecondtry
Hiii, it's day eleven of trying to get bored of Telegram by posting a fact every day, and today's fact is about one of the most misunderstood medical specialties: Forensic Medicine.
When people hear "forensic doctor," they usually imagine someone standing over a dead body solving murders like in TV shows. But the reality is much more interesting.
Forensic medicine is the branch of medicine that helps legal and criminal investigations using medical science. Whenever there's a suspicious death, an assault, or an unexplained injury, forensic experts step in to examine the medical evidence and explain what actually happened.
One thing many people confuse is the difference between the cause of death and the manner of death.
The cause of death is what physically killed the person, such as severe bleeding, poisoning, or a brain injury.
The manner of death explains how it happened. Was it natural? An accident? Suicide? Homicide? Or is it still undetermined?
For example, if someone dies from internal bleeding, that's the cause of death. If that bleeding happened because of a car crash, then the manner of death is an accident.
A forensic investigation actually begins long before the autopsy.
Doctors carefully examine the scene itself, looking at the body's position, clothing, blood patterns, signs of a struggle, nearby medications, and even the temperature of the environment. Sometimes, a tiny overlooked detail can completely change the direction of a case.
During an autopsy, the body is examined both externally and internally. Every scar, bruise, tattoo, or injury is documented, while organs such as the heart, lungs, liver, and brain are carefully inspected. Samples may also be collected for laboratory testing.
One of the most common questions is, "Can they tell exactly when someone died?" Not exactly.
Instead, forensic doctors estimate the time of death using several clues, including body temperature, muscle stiffness (rigor mortis), the settling of blood after death (livor mortis), and the stage of decomposition. Weather, clothing, and humidity can all affect these signs, so it's never an exact science.
Forensic medicine also includes fascinating specialties.
Forensic toxicologists search for drugs, alcohol, poisons, and other chemicals using blood, urine, hair, or tissue samples. In some cases, toxicology results can take weeks to come back.
Another surprising field is forensic entomology, where scientists study insects found on human remains. Since certain flies lay eggs at predictable times, the insects' life cycle can help estimate how long a body has been there.
And when only skeletal remains are left, forensic anthropologists can often estimate a person's age, biological sex, height, previous fractures, and sometimes even diseases they suffered during life.
Despite what movies show, forensic doctors don't investigate crime scenes alone, interrogate suspects, analyze every DNA sample, and arrest the killer. Those jobs are handled by different specialists working together
And perhaps the biggest misconception of all: a body doesn't always reveal every answer.
Even after a complete autopsy, the exact cause of death may remain uncertain or require further laboratory testing.
Forensic medicine is incredibly powerful, but it isn't magic. It combines medicine, anatomy, pathology, chemistry, and law to help uncover the truth—one piece of evidence at a time, And thats all i know, byebye
#Facts_thesecondtry
Hiii, it's day actually day TEN of trying to get bored of Telegram by posting a fact every day, and today's fact is about one of the deadliest diseases humanity has ever faced: The Plague.
When most people hear the word "plague", they immediately think of the Black Death. But the story is much bigger than that
The disease was caused by a bacterium called Yersinia pestis. It lived mainly in rodents such as rats and was spread by infected fleas. When large numbers of rats died, those fleas searched for a new host—and often that host was a human.
Once infected, the victim would usually develop a high fever, severe headaches, dizziness, exhaustion, and painful swollen lymph nodes known as buboes. As the disease progressed, bleeding could occur beneath the skin, causing dark patches to appear on the body. In many cases, the victim would die within only a few days.
Some forms of the plague were even worse. If the bacteria entered the bloodstream, it could cause massive internal bleeding and organ failure. If it reached the lungs, it became airborne and could spread from person to person through coughing, often killing its victims within days.
The plague first shook the known world during the reign of Emperor Justinian in 541 AD. At its peak, an estimated 10,000 people were dying every single day in Constantinople. Bodies accumulated so quickly that cities struggled to bury them. Historians estimate that this outbreak alone may have killed nearly 100 million people.
Centuries later, in 1347, disaster struck again.
During the siege of the city of Caffa, Mongol forces reportedly catapulted the bodies of plague victims over the city's walls. Terrified merchants fled by ship, unknowingly carrying infected rats and fleas with them across the Mediterranean.
What followed became known as The Black Death
Within a few years, the disease spread through Italy, France, England, Spain, Germany, Scandinavia, North Africa, the Middle East, and beyond. Entire villages disappeared from maps. Farms were abandoned. Cities became silent.
The most terrifying part was that nobody understood what was happening.
People believed the disease came from poisoned air, bad smells, or divine punishment. Streets filled with smoke from burning herbs because many hoped the air itself could be purified. Some groups publicly whipped themselves in hopes of earning God's forgiveness. Others searched for someone to blame, leading to the persecution of innocent minorities and foreigners.
Doctors were just as helpless.
Many still followed ancient medical theories and prescribed bloodletting, laxatives, and strange remedies. Some even tied live chickens to plague swellings, believing the animals would absorb the disease. Others rubbed crushed snakes onto the infected areas. Wealthy people paid fortunes for powders supposedly made from unicorn horns.
None of it worked.
Ironically, one of the few methods that actually saved lives was quarantine. Cities that isolated travelers and separated the sick from the healthy suffered far fewer losses. Without knowing anything about bacteria, they had accidentally discovered one of the most effective tools against epidemics.
The Black Death killed millions, but it also changed history forever. Labor became more valuable, the feudal system weakened, faith in traditional institutions declined, and Europe slowly began moving toward the Renaissance, the Scientific Revolution, and the modern world.
A tiny bacterium carried by a flea managed to reshape entire civilizations. Thats all, byebye, if theres a mistake correct me, and if theres anything you want me to search about tell me
#Facts_thesecondtry
Hiii, it's day nine of trying to get bored of Telegram by posting a fact everyday, and today's fact is about something almost everyone claims to hate, which is Hypocrisy
Most people think hypocrites are liars, but psychology suggests that hypocrisy is often much more complicated than that.
A hypocrite is someone whose actions don't match their stated beliefs. For example, someone might tell others to be honest while regularly lying themselves, or criticize people for doing something they secretly do too,
What's interesting is that humans are very good at spotting hypocrisy in other people, but much worse at noticing it in themselves. And i dont like that
One reason for this is that we tend to judge others by their actions, while judging ourselves by our intentions. If someone else breaks their own rules, we see them as hypocritical. If we break our own rules, we often explain it away with excuses, circumstances, or good intentions.
Psychologists have found that when our actions contradict our beliefs, we experience an uncomfortable feeling known as cognitive dissonance. Instead of changing our behavior, many people unconsciously change their explanations to make themselves feel better.
In other words, the human brain often prefers protecting its self-image over admitting it was wrong
This doesn't mean everyone is a hypocrite all the time. However, it does mean that hypocrisy is far more common than most people would like to admit.
Perhaps the most ironic fact about hypocrisy is this; The people who hate hypocrites the most are often just as capable of becoming one themselves
Fun fact, most people are hypocrites but they dont think twice about their actions
